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A method for transplantation of human HSCs into zebrafish, to replace humanised murine transplantation models

机译:一种将人HSC移植到斑马鱼中的方法,以替代人源化的小鼠移植模型

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摘要

Haematopoietic stem cell (HSC) transplantation is a critical therapy for haematopoietic malignancies and immune disorders. Incomplete or delayed engraftment of HSCs in the host results in increased risk of infection and morbidity. The mechanisms of HSC engraftment are poorly understood and understanding these processes will increase transplantation success on many levels. Current animal models are immunocompromised 'humanised' mice transplanted with human HSCs. Harmful procedures include genetic manipulations and irradiation to ablate the mouse immune system, and opaque mouse tissues make visualisation of the early steps of HSC engraftment impossible. There is a need for new models to offer alternatives to humanised mice in the study of HSC transplantation. Here we described a detailed method for transplantation of human HSCs into zebrafish, before the onset of adaptive immunity. Human HSCs were purified from whole blood by enrichment of the CD34 cell population using a positive magnetic selection and further purified using an anti-CD34 antibody and cell sorting. Sorted CD34 cells were transplanted into the blood stream of 52 hour old zebrafish larvae. Human HSCs home into the zebrafish haematopoietic niche, where they engage with endothelial cells and undergo cell division. Our model offers the opportunities to image in vivo human HSC engraftment in a transparent organism, without the myeloablative strategies used in mice, and provides a unique system to understand the dynamic process of engraftment and replace current murine models. This technique can be applied to current engraftment protocols to validate the viability and efficiency of cryofrozen HSC grafts. This humanised zebrafish model will be instrumental to develop the 3Rs values in stem cell transplantation research and our detailed protocol will increase the chances of uptake of this zebrafish model by the mouse community.
机译:血吞噬干细胞(HSC)移植是血恶性肿瘤和免疫障碍的关键疗法。在宿主中的HSC植入不完全或延迟植入导致感染和发病率的风险增加。 HSC植入机制较差,理解这些过程将增加更多级别的移植成功。目前的动物模型是免疫功能的推移的“人源化的小鼠移植着人HSC。有害程序包括遗传操作和辐射以消融小鼠免疫系统,并且不透明的小鼠组织使HSC植入的早期步骤的可视化是不可能的。需要新型模型,以便在HSC移植研究中提供人性化老鼠的替代品。在这里,我们描述了一种详细的方法,用于将人HSC移植到斑马鱼之前,在自适应免疫开始之前。通过使用阳性磁选通过富集CD34细胞群,通过抗CD34抗体和细胞分选进一步纯化,通过富集CD34细胞群来纯化人HSC。将分选CD34细胞移植到52小时斑马鱼幼虫的血流中。人的HSCS回家进入斑马鱼血产的利基,它们与内皮细胞接触并接受细胞分裂。我们的模型为在透明生物体中的体内人类HSC植入中的图像提供了图像的机会,而无需小鼠中使用的肌肉效果策略,并提供了一个独特的系统,以了解植入的动态过程并更换电流鼠模型。该技术可以应用于当前的植入协议,以验证低温子HSC移植物的活力和效率。这种人性化的斑马鱼模型将有助于开发干细胞移植研究中的3RS值,我们的详细协议将增加鼠标群落的斑马鱼模型的吸收机会。

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